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US Patent 10525285 Ionizing-radiation beam monitoring system

Patent 10525285 was granted and assigned to INTEGRATED SENSORS, LLC on January, 2020 by the United States Patent and Trademark Office.

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Contents

Is a
Patent
Patent

Patent attributes

Patent Applicant
INTEGRATED SENSORS, LLC
INTEGRATED SENSORS, LLC
Current Assignee
INTEGRATED SENSORS, LLC
INTEGRATED SENSORS, LLC
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
10525285
Patent Inventor Names
Peter S. Friedman0
Date of Patent
January 7, 2020
Patent Application Number
16529200
Date Filed
August 1, 2019
Patent Citations Received
‌
US Patent 12070625 Systems, devices, and methods for high quality ion beam formation
0
‌
US Patent 11497460 Method and apparatus for dose measurement in an x-ray device
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US Patent 11517769 Neutron beam transmission adjusting device comprising a neutron beam transmission unit including a neutron reactant, method for producing neutron beam transmission adjusting device, and neutron beam adjusting method
0
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US Patent 11986677 Triggered treatment systems and methods
0
‌
US Patent 12017091 Ionizing-radiation beamline monitoring system
0
0
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US Patent 11478664 Particle beam gun control systems and methods
‌
US Patent 11529532 Radiation therapy systems and methods
...
Patent Primary Examiner
‌
Kiho Kim
Patent abstract

A transmissive ionizing-radiation beam monitoring system includes an enclosure structure including an entrance window and an exit window to an incident ionizing-radiation beam, where the entrance window and the exit window are highly transmissive. The system further includes a thin scintillator within the enclosure structure that is directly in an incident ionizing-radiation beam path and transmissive to the incident radiation beam and an ultraviolet (“UV”) illumination source within the enclosure structure facing the scintillator for internal system calibration. Embodiments further include a UV photosensor within the enclosure structure positioned to monitor and calibrate the UV illumination source and a machine vision camera within the enclosure structure that includes a lens which views the scintillator through a close proximity mirror including a folded optical axis system located to a side of the scintillator.

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